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一种用于增强二次近红外深度成像引导的颅内肿瘤治疗的自发膜吸附方法。

A Spontaneous Membrane-Adsorption Approach to Enhancing Second Near-Infrared Deep-Imaging-Guided Intracranial Tumor Therapy.

作者信息

Li Luoyuan, Zhang Bei, Liu Yuxin, Gao Rongyao, Zhou Jing, Fu Li-Min, Wang Jian

机构信息

School of Pharmaceutical Sciences, Key Laboratory of Bioorganic Phosphorous Chemistry & Chemical Biology (Ministry of Education), Tsinghua University, 100084 Beijing, P.R. China.

Department of Chemistry, Capital Normal University, Beijing 100048, P.R. China.

出版信息

ACS Nano. 2021 Mar 23;15(3):4518-4533. doi: 10.1021/acsnano.0c08532. Epub 2021 Feb 23.

Abstract

Herein, a functional class of microenvironment-associated nanomaterials is reported for improving the second near-infrared (NIR-II) imaging and photothermal therapeutic effect on intracranial tumors via a spontaneous membrane-adsorption approach. Specific peptides, photothermal agents, and biological alkylating agents were designed to endow the nanogels with high targeting specificity, photothermal properties, and pharmacological effects. Importantly, the frozen scanning electron microscopy technology (cryo-SEM) was utilized to observe the self-association of nanomaterials on tumor cells. Interestingly, the spontaneous membrane-adsorption behavior of nanomaterials was captured through direct imaging evidence. Histological analysis showed that the cross-linking adhesion in intracranial tumor and monodispersity in normal tissues of the nanogels not only enhanced the retention time but also ensured excellent biocompatibility. Impressively, data confirmed that the microenvironment-associated nanogels could significantly enhance brain tumor clearance rate within a short treatment timeframe (only two weeks). In short, utilizing the spontaneous membrane-adsorption strategy can significantly improve NIR-II diagnosis and phototherapy in brain diseases while avoiding high-risk complications.

摘要

在此,报道了一类功能性微环境相关纳米材料,其通过自发膜吸附方法改善对颅内肿瘤的二次近红外(NIR-II)成像和光热治疗效果。设计了特异性肽、光热剂和生物烷基化剂,以使纳米凝胶具有高靶向特异性、光热性质和药理作用。重要的是,利用冷冻扫描电子显微镜技术(cryo-SEM)观察纳米材料在肿瘤细胞上的自组装。有趣的是,通过直接成像证据捕捉到了纳米材料的自发膜吸附行为。组织学分析表明,纳米凝胶在颅内肿瘤中的交联粘附和在正常组织中的单分散性不仅延长了保留时间,还确保了优异的生物相容性。令人印象深刻的是,数据证实微环境相关纳米凝胶可在短治疗时间内(仅两周)显著提高脑肿瘤清除率。简而言之,利用自发膜吸附策略可显著改善脑部疾病的NIR-II诊断和光疗,同时避免高风险并发症。

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